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    • 4. 发明授权
    • Linearizer
    • 线性化器
    • US07557654B2
    • 2009-07-07
    • US11660136
    • 2004-10-28
    • Hifumi NotoKazuhisa YamauchiYoshihiro HamamatsuTomokazu HamadaMasatoshi Nakayama
    • Hifumi NotoKazuhisa YamauchiYoshihiro HamamatsuTomokazu HamadaMasatoshi Nakayama
    • H03F1/26H03F1/30
    • H03F1/3276H03F1/3223H03F2200/468
    • A linearizer changes a gain characteristic to a valley characteristic in which a gain reduces and then increases. The linearizer includes: a signal path in which an RF signal input terminal an input side bias blocking capacitor, a diode pair, including diodes having opposite polarities to each other, an output side bias blocking capacitor and an RF signal output terminal in series in the stated order; a bias circuit in which a resistor is provided between and a signal path formed between the input side bias blocking capacitor and the diode pair and a bias terminal; an RF short-circuiting capacitor whose one end is connected with the bias circuit between the bias terminal and the resistor and whose other end is grounded; and a DC feed inductor whose one end is connected with the signal path between the diode pair and the output side bias blocking capacitor and whose other end is grounded.
    • 线性化器将增益特性改变为增益减小然后增加的谷特性。 线性化装置包括:信号路径,其中RF信号输入端子,输入侧偏置阻塞电容器,二极管对,包括彼此具有相反极性的二极管,输出侧偏置阻塞电容器和RF信号输出端子串联连接 命令; 在其间设置有电阻器和在输入侧偏置阻断电容器和二极管对之间形成的信号路径和偏置端子之间的偏置电路; RF短路电容器,其一端与偏置端子和电阻器之间的偏置电路连接,另一端接地; 以及直流馈电电感,其一端与二极管对和输出侧偏压电容之间的信号路径连接,另一端接地。
    • 5. 发明授权
    • Thin-film magnetic head, method for producing the same and magnetic disk device using the same
    • 薄膜磁头及其制造方法以及使用其的磁盘装置
    • US06995948B2
    • 2006-02-07
    • US10617560
    • 2003-07-11
    • Masatoshi Nakayama
    • Masatoshi Nakayama
    • G11B5/255
    • B82Y25/00B82Y10/00C23C16/26C23C16/30G11B5/102G11B5/255G11B5/3106G11B5/3903G11B5/3909G11B5/3967G11B2005/3996Y10T29/49021
    • A magnetoresistive thin-film magnetic head with high corrosion resistance for recording medium having massive capacity is provided by providing a protective film having a thickness of 40 Å or less. Since the distance between the head and the medium is remarkably reduced, the film is suitable for a recording medium having high-packing density. The magnetoresistive type thin-film magnetic head is provided, wherein the following layers are formed on at least the surface of the head facing a recording medium: (A) a lower layer composed of a thin film having the composition represented by the formula selected from the group consisting of: formula (i): SiCXHYOZNWFTBUPV (where X=0.5–26, Y=0.5–13, Z=0–6, W=0–6, T=0–6, U=0–1 and V=0–1, in terms of atomic ratio), and formula (ii): SiHYOZNWFTBUPV (where Y=0.0001–0.7, Z=0–6, W=0–6, T=0–6, U=0–1 and V=0–1); and (B) an upper layer composed of a diamond-like thin film having the composition represented by the following formula: CHaObNcFdBePf (where a=0–0.7, b=0–1, c=0–1, d=0–1, e=0–1 and f=0–1), and the total thickness of the lower layer and the upper layer is 40 Å or less. Also provided are a method for producing the same, and a magnetic head device using the same.
    • 通过提供厚度为40埃以下的保护膜,提供具有大容量记录介质的具有高耐腐蚀性的磁阻薄膜磁头。 由于头和介质之间的距离显着降低,所以该膜适用于具有高堆积密度的记录介质。 提供了磁阻型薄膜磁头,其中在面向记录介质的头部的至少表面上形成以下层:(A)由具有由下式表示的组成的薄膜组成的下层: 该组组成
    • 7. 发明授权
    • Method of producing protected thermal head
    • 生产保护热头的方法
    • US06471832B1
    • 2002-10-29
    • US08641855
    • 1996-05-02
    • Masatoshi NakayamaMasahiro NakanoTsukimi Endo
    • Masatoshi NakayamaMasahiro NakanoTsukimi Endo
    • C23C1434
    • B41J2/345
    • A method of producing a wear-resistant protective film for a thermal head comprises depositing a wear-resistant protective film by sputtering on a thermal head which includes a substrate, and a heat-developing layer and a pair of electrodes formed on either the substrate or a heat-regenerative layer formed thereon. A layer of the wear resistant protective film is formed under a RF larger bias and another layer without a bias or with a smaller bias. Good step coverage is obtained by the RF sputter layer of the wear-resistant and the protective film prevents the intrusion of water that can cause cracking, and the layer formed under no or smaller bias reduces internal stresses and inhibits the development of cracks due to internal stresses as well as the cracking by RF sputtering.
    • 制造用于热敏头的耐磨保护膜的方法包括通过溅射将耐磨保护膜沉积在包括基底的热敏头上,以及形成在基底上的热显影层和一对电极 形成在其上的热再生层。 在RF较大的偏压下形成耐磨保护膜层,而在没有偏压或较小偏压的情况下形成另一层。 耐磨层的RF溅射层获得良好的阶梯覆盖,保护膜防止可能引起裂纹的水侵入,而在没有或较小偏置的条件下形成的层会降低内部应力,并抑制内部产生裂缝的发展 应力以及RF溅射的裂纹。
    • 9. 发明授权
    • Feedforward amplifier with improved characteristics without using pilot
signal
    • 前馈放大器具有改进的特性,无需使用导频信号
    • US6133791A
    • 2000-10-17
    • US177651
    • 1998-10-23
    • Kenichi HoriguchiMasatoshi NakayamaYukio IkedaTadashi TakagiHaruyasu Senda
    • Kenichi HoriguchiMasatoshi NakayamaYukio IkedaTadashi TakagiHaruyasu Senda
    • H03F1/32H03F1/00
    • H03F1/3229
    • A feedforward amplifier which includes a distortion detector, a distortion eliminator, an error power extractor, a first level detector and a first controller. The error power extractor extracts output error power due to variations in the distortion eliminator by combining the output signal from the distortion eliminator with the signal from a first linear signal path in the distortion detector in opposite phases. The first level detector detects the output error power extracted by the error power extractor, and the first controller controls a first variable attenuator and a first phase shifter which are interposed in the distortion eliminator such that the output error power is maintained at zero. This can solve a problem of a conventional feedforward amplifier in that the power level of the pilot signal must be increased to heighten the detection sensitivity of the pilot signal because the detection level of the pilot signal becomes minimum at an optimum operation point, and that the increasing power of the pilot signal degrades the communication quality of a system employing the conventional feedforward amplifier.
    • 一种前馈放大器,包括失真检测器,失真消除器,误差功率提取器,第一电平检测器和第一控制器。 误差功率提取器通过将来自失真消除器的输出信号与来自失真检测器中的第一线性信号路径的信号相反地组合,由于失真消除器的变化而提取输出误差功率。 第一电平检测器检测由误差电力提取器提取的输出误差功率,并且第一控制器控制插入失真消除器中的第一可变衰减器和第一移相器,使得输出误差功率保持为零。 这可以解决常规前馈放大器的问题,因为导频信号的检测电平在最佳操作点变为最小时必须提高导频信号的功率电平,以提高导频信号的检测灵敏度, 导频信号的增加功率降低了采用常规前馈放大器的系统的通信质量。